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    • 22. 发明授权
    • System and method for augmented impedance sensing
    • 增强型阻抗检测系统和方法
    • US07956620B2
    • 2011-06-07
    • US12540190
    • 2009-08-12
    • James A. Gilbert
    • James A. Gilbert
    • G01R27/28A61B18/04
    • A61B18/1233A61B18/1206A61B18/1445A61B18/16A61B2018/00875A61B2018/1286
    • An impedance monitoring circuit for an electrosurgical generator is disclosed. The monitoring circuit includes an isolation transformer coupled to at least one of an active terminal and a return terminal of an electrosurgical generator, wherein the isolation transformer includes a primary winding coupled to a reference resistor and a secondary winding coupled to a load. The monitoring circuit also includes a driver configured to transmit a sensor signal to the reference resistor and the load, a primary converter coupled to the reference resistor and the load and configured to detect a primary converted signal as a function of the sensor signal passing through the reference resistor and the load. The monitoring circuit further includes a secondary converter coupled to the driver and configured to detect a secondary converted signal as a function of the sensor signal prior to passing through the reference resistor and the load and a controller configured to determine a fault condition based on the primary and secondary converted signals.
    • 公开了一种用于电外科发生器的阻抗监测电路。 监测电路包括耦合到电外科发生器的有源端子和返回端子中的至少一个的隔离变压器,其中隔离变压器包括耦合到参考电阻器的初级绕组和耦合到负载的次级绕组。 监测电路还包括被配置为将传感器信号传送到参考电阻器和负载的驱动器,耦合到参考电阻器和负载的主转换器,并被配置为检测作为通过传感器信号的传感器信号的函数的初级转换信号 参考电阻和负载。 监视电路还包括耦合到驱动器并被配置为在通过参考电阻器和负载之前检测作为传感器信号的函数的次级转换信号的次级转换器,以及被配置为基于主电路确定故障状况的控制器 和二次转换信号。
    • 23. 发明申请
    • Power Level Transitioning in a Surgical Instrument
    • 手术器械功率水平转换
    • US20110028963A1
    • 2011-02-03
    • US12534308
    • 2009-08-03
    • James A. Gilbert
    • James A. Gilbert
    • A61B18/14A61B18/18
    • A61B18/1206A61B18/1445A61B2018/0063A61B2018/00702A61B2018/00875A61B2018/1412A61B2018/1455
    • An electrosurgical system and method are disclosed. The system includes an electrosurgical generator adapted to supply electrosurgical energy to tissue. The generator is further adapted to supply an electrosurgical signal at a variable power level. The generator includes sensor circuitry adapted to sense tissue impedance and/or an electrosurgical signal zero crossing. The generator also includes a controller, which may include a microprocessor, that is adapted to receive a tissue impedance signal and/or a waveform zero crossing signal. The controller is configured to monitor tissue impedance, and in response to a threshold value of impedance being reached, to cause a power level of the electrosurgical energy to transition from a first power level to a second power level. The slew rate of the power transition may be in accordance with a transition function, such as a cosine function. The power transition may additionally or alternatively be performed during, or correlated with, an electrosurgical signal zero crossing. The system also includes an electrosurgical instrument including at least one active electrode adapted to apply electrosurgical energy to tissue for treatment.
    • 公开了电外科系统和方法。 该系统包括适于向组织提供电外科能量的电外科发生器。 该发生器还适于以可变功率水平提供电外科信号。 发生器包括适于感测组织阻抗和/或电外科信号零交叉的传感器电路。 发生器还包括控制器,其可以包括微处理器,其适于接收组织阻抗信号和/或波形零交叉信号。 控制器被配置为监测组织阻抗,并且响应于达到的阻抗的阈值,引起电外科能量的功率水平从第一功率电平转换到第二功率电平。 功率转换的转换速率可以根据诸如余弦函数的转换函数。 功率转换可以额外地或替代地在电外科信号零交叉期间执行或与电外科信号零交叉相关联。 该系统还包括电外科器械,其包括适于将电外科能量施加到组织用于治疗的至少一个活性电极。
    • 24. 发明授权
    • Power level transitioning in a surgical instrument
    • 手术器械功率水平转换
    • US08932282B2
    • 2015-01-13
    • US12534308
    • 2009-08-03
    • James A. Gilbert
    • James A. Gilbert
    • A61B18/10A61B18/12A61B18/14A61B18/00
    • A61B18/1206A61B18/1445A61B2018/0063A61B2018/00702A61B2018/00875A61B2018/1412A61B2018/1455
    • An electrosurgical system and method are disclosed. The system includes an electrosurgical generator adapted to supply electrosurgical energy to tissue. The generator is further adapted to supply an electrosurgical signal at a variable power level. The generator includes sensor circuitry adapted to sense tissue impedance and/or an electrosurgical signal zero crossing. The generator also includes a controller, which may include a microprocessor, that is adapted to receive a tissue impedance signal and/or a waveform zero crossing signal. The controller is configured to monitor tissue impedance, and in response to a threshold value of impedance being reached, to cause a power level of the electrosurgical energy to transition from a first power level to a second power level. The slew rate of the power transition may be in accordance with a transition function, such as a cosine function. The power transition may additionally or alternatively be performed during, or correlated with, an electrosurgical signal zero crossing. The system also includes an electrosurgical instrument including at least one active electrode adapted to apply electrosurgical energy to tissue for treatment.
    • 公开了电外科系统和方法。 该系统包括适于向组织提供电外科能量的电外科发生器。 该发生器还适于以可变功率水平提供电外科信号。 发生器包括适于感测组织阻抗和/或电外科信号零交叉的传感器电路。 发生器还包括控制器,其可以包括微处理器,其适于接收组织阻抗信号和/或波形零交叉信号。 控制器被配置为监测组织阻抗,并且响应于达到的阻抗的阈值,引起电外科能量的功率水平从第一功率电平转换到第二功率电平。 功率转换的转换速率可以根据诸如余弦函数的转换函数。 功率转换可以额外地或替代地在电外科信号零交叉期间执行或与电外科信号零交叉相关联。 该系统还包括电外科器械,其包括适于将电外科能量施加到组织用于治疗的至少一个活性电极。
    • 26. 发明授权
    • Inductively-coupled plasma device
    • 感应耦合等离子体装置
    • US08222822B2
    • 2012-07-17
    • US12606672
    • 2009-10-27
    • James A. Gilbert
    • James A. Gilbert
    • H05H1/46
    • H05H1/46H01J37/321H05H2001/245H05H2001/2468H05H2001/4667H05H2001/4697
    • A plasma device configured to receive ionizable media is disclosed. The plasma device includes a first pair of dielectric substrates each having an inner surface and an outer surface. The first pair of dielectric substrates is disposed in spaced, parallel relation relative to one another with the inner surfaces thereof facing one another. The device also includes a first pair of spiral coils each disposed on the inner surface of the dielectric substrates. The first pair of spiral coils is configured to couple to a power source and configured to inductively couple to an ionizable media passed therebetween to ignite the ionizable media to form a plasma effluent.
    • 公开了一种配置成接收可电离介质的等离子体装置。 等离子体装置包括第一对电介质基板,每个电介质基板具有内表面和外表面。 第一对电介质基片相对于彼此以间隔开的平行关系设置,其内表面彼此面对。 该装置还包括第一对螺旋线圈,每个螺旋线圈设置在电介质基板的内表面上。 第一对螺旋线圈被配置成耦合到电源并且被配置为感应耦合到通过它们之间的可电离介质以点燃可离子化介质以形成等离子体流出物。
    • 28. 发明申请
    • Inductively-Coupled Plasma Device
    • 电感耦合等离子体装置
    • US20110095689A1
    • 2011-04-28
    • US12606672
    • 2009-10-27
    • James A. Gilbert
    • James A. Gilbert
    • H05H1/46
    • H05H1/46H01J37/321H05H2001/245H05H2001/2468H05H2001/4667H05H2001/4697
    • A plasma device configured to receive ionizable media is disclosed. The plasma device includes a first pair of dielectric substrates each having an inner surface and an outer surface. The first pair of dielectric substrates is disposed in spaced, parallel relation relative to one another with the inner surfaces thereof facing one another. The device also includes a first pair of spiral coils each disposed on the inner surface of the dielectric substrates. The first pair of spiral coils is configured to couple to a power source and configured to inductively couple to an ionizable media passed therebetween to ignite the ionizable media to form a plasma effluent.
    • 公开了一种配置成接收可电离介质的等离子体装置。 等离子体装置包括第一对电介质基板,每个电介质基板具有内表面和外表面。 第一对电介质基片相对于彼此以间隔开的平行关系设置,其内表面彼此面对。 该装置还包括第一对螺旋线圈,每个螺旋线圈设置在电介质基板的内表面上。 第一对螺旋线圈被配置成耦合到电源并且被配置为感应耦合到通过它们之间的可电离介质以点燃可离子化介质以形成等离子体流出物。